001     17823
005     20240619083339.0
024 7 _ |2 pmid
|a pmid:21456697
024 7 _ |2 DOI
|a 10.1063/1.3560616
024 7 _ |2 WOS
|a WOS:000289151400064
024 7 _ |2 Handle
|a 2128/7351
037 _ _ |a PreJuSER-17823
041 _ _ |a eng
082 _ _ |a 540
084 _ _ |2 WoS
|a Physics, Atomic, Molecular & Chemical
100 1 _ |0 P:(DE-HGF)0
|a Briels, W.J.
|b 0
245 _ _ |a Constitutive equations for the flow behavior of entangled polymeric systems: Application to star polymers
260 _ _ |a Melville, NY
|b American Institute of Physics
|c 2011
300 _ _ |a 124901
336 7 _ |a Journal Article
|0 PUB:(DE-HGF)16
|2 PUB:(DE-HGF)
336 7 _ |a Output Types/Journal article
|2 DataCite
336 7 _ |a Journal Article
|0 0
|2 EndNote
336 7 _ |a ARTICLE
|2 BibTeX
336 7 _ |a JOURNAL_ARTICLE
|2 ORCID
336 7 _ |a article
|2 DRIVER
440 _ 0 |0 3145
|a Journal of Chemical Physics
|v 134
|x 0021-9606
|y 12
500 _ _ |a We are grateful to J. Roovers for providing the star polymers used and to E. Stiakakis for assistance with characterization. This work was supported in part by the EU, NoE Soft-Comp (Grant No. NMP3-CT-2004-502235) and FP7 NanoDirect (Contract No. CP-FP-213948-2).
520 _ _ |a A semimicroscopic derivation is presented of equations of motion for the density and the flow velocity of concentrated systems of entangled polymers. The essential ingredient is the transient force that results from perturbations of overlapping polymers due to flow. A Smoluchowski equation is derived that includes these transient forces. From this, an equation of motion for the polymer number density is obtained, in which body forces couple the evolution of the polymer density to the local velocity field. Using a semimicroscopic Ansatz for the dynamics of the number of entanglements between overlapping polymers, and for the perturbations of the pair-correlation function due to flow, body forces are calculated for nonuniform systems where the density as well as the shear rate varies with position. Explicit expressions are derived for the shear viscosity and normal forces, as well as for nonlocal contributions to the body force, such as the shear-curvature viscosity. A contribution to the equation of motion for the density is found that describes mass transport due to spatial variation of the shear rate. The two coupled equations of motion for the density and flow velocity predict flow instabilities that will be discussed in more detail in a forthcoming publication.
536 _ _ |0 G:(DE-Juel1)FUEK505
|2 G:(DE-HGF)
|a BioSoft: Makromolekulare Systeme und biologische Informationsverarbeitung
|c P45
|x 0
588 _ _ |a Dataset connected to Web of Science, Pubmed
650 _ 2 |2 MeSH
|a Hydrodynamics
650 _ 2 |2 MeSH
|a Models, Chemical
650 _ 2 |2 MeSH
|a Motion
650 _ 2 |2 MeSH
|a Polymers: chemistry
650 _ 2 |2 MeSH
|a Viscosity
650 _ 7 |0 0
|2 NLM Chemicals
|a Polymers
650 _ 7 |2 WoSType
|a J
700 1 _ |0 P:(DE-HGF)0
|a Vlassopoulos, D.
|b 1
700 1 _ |0 P:(DE-Juel1)130749
|a Kang, K.
|b 2
|u FZJ
700 1 _ |0 P:(DE-Juel1)130616
|a Dhont, J.K.G.
|b 3
|u FZJ
773 _ _ |0 PERI:(DE-600)1473050-9
|a 10.1063/1.3560616
|g Vol. 134, p. 124901
|p 124901
|q 134<124901
|t The @journal of chemical physics
|v 134
|x 0021-9606
|y 2011
856 7 _ |u http://dx.doi.org/10.1063/1.3560616
856 4 _ |u https://juser.fz-juelich.de/record/17823/files/FZJ-17823.pdf
|y Published under German "Allianz" Licensing conditions on 2011-03-22. Available in OpenAccess from 2011-03-22
|z Published final document.
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913 1 _ |0 G:(DE-Juel1)FUEK505
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|l Biologische Informationsverarbeitung
|v BioSoft: Makromolekulare Systeme und biologische Informationsverarbeitung
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|l BioSoft Fundamentals for future Technologies in the fields of Soft Matter and Life Sciences
|v Functional Macromolecules and Complexes
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914 1 _ |y 2011
915 _ _ |0 StatID:(DE-HGF)0010
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